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Whitmer may extend partial shutdown of schools, businesses




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Amid virus outbreak, New Mexico addresses school enrollment




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Why Lady Vols reminded Nicky Anosike of her own Tennessee team at Girls Inc. basketball clinic

While the Lady Vols volunteered at the Girls Inc. basketball clinic, they reminded Nicky Anosike of her own Tennessee teammates




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Tennessee soccer earns fourth straight NCAA Tournament berth, will face No. 7 seed Virginia Tech

Tennessee soccer earned an NCAA Tournament berth for the fourth straight season and will face No. 7 seed Virginia Tech in the first round Friday




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Lady Vols rely on best 3-point shooting performance of season to beat Middle Tennessee

Lady Vols basketball relied on its best 3-point shooting night of the season to close out a win over Middle Tennessee State on Tuesday




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NSW State Library’s priceless ‘bad art’ collection celebrated in lavish new book

Tuesday 14 November 2023
Reading the Rooms: Behind the paintings of the State Library of NSW available 1 December 2023. 




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Stressed Memories: How Acute Stress Affects Memory Formation in Humans

Marloes J. A. G. Henckens
Aug 12, 2009; 29:10111-10119
BehavioralSystemsCognitive




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Right Temporoparietal Junction Underlies Avoidance of Moral Transgression in Autism Spectrum Disorder

Yang Hu
Feb 24, 2021; 41:1699-1715
BehavioralSystemsCognitive




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Multiscale Computer Model of the Spinal Dorsal Horn Reveals Changes in Network Processing Associated with Chronic Pain

Laura Medlock
Apr 13, 2022; 42:3133-3149
Systems/Circuits




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Aperiodic EEG Predicts Variability of Visual Temporal Processing

Michele Deodato
Oct 2, 2024; 44:e2308232024-e2308232024
BehavioralSystemsCognitive




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Revisiting the Stress Concept: Implications for Affective Disorders

Bruce S. McEwen
Jan 2, 2020; 40:12-21
Viewpoints




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Mindfulness Meditation-Based Pain Relief Employs Different Neural Mechanisms Than Placebo and Sham Mindfulness Meditation-Induced Analgesia

Fadel Zeidan
Nov 18, 2015; 35:15307-15325
BehavioralSystemsCognitive




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To See or Not to See: Prestimulus {alpha} Phase Predicts Visual Awareness

Kyle E. Mathewson
Mar 4, 2009; 29:2725-2732
BehavioralSystemsCognitive




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Cells and Molecules Underpinning Cannabis-Related Variations in Cortical Thickness during Adolescence

During adolescence, cannabis experimentation is common, and its association with interindividual variations in brain maturation well studied. Cellular and molecular underpinnings of these system-level relationships are, however, unclear. We thus conducted a three-step study. First, we exposed adolescent male mice to -9-tetrahydrocannabinol (THC) or a synthetic cannabinoid WIN 55,212-2 (WIN) and assessed differentially expressed genes (DEGs), spine numbers, and dendritic complexity in their frontal cortex. Second, in human (male) adolescents, we examined group differences in cortical thickness in 34 brain regions, using magnetic resonance imaging, between those who experimented with cannabis before age 16 (n = 140) and those who did not (n = 327). Finally, we correlated spatially these group differences with gene expression of human homologs of mouse-identified DEGs. The spatial expression of 13 THC-related human homologs of DEGs correlated with cannabis-related variations in cortical thickness, and virtual histology revealed coexpression patterns of these 13 genes with cell-specific markers of astrocytes, microglia, and a type of pyramidal cells enriched in dendrite-regulating genes. Similarly, the spatial expression of 18 WIN-related human homologs of DEGs correlated with group differences in cortical thickness and showed coexpression patterns with the same three cell types. Gene ontology analysis indicated that 37 THC-related human homologs are enriched in neuron projection development, while 33 WIN-related homologs are enriched in processes associated with learning and memory. In mice, we observed spine loss and lower dendritic complexity in pyramidal cells of THC-exposed animals (vs controls). Experimentation with cannabis during adolescence may influence cortical thickness by impacting glutamatergic synapses and dendritic arborization.




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The Role of the Hippocampus in Consolidating Motor Learning during Wakefulness




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Neuritin Controls Axonal Branching in Serotonin Neurons: A Possible Mediator Involved in the Regulation of Depressive and Anxiety Behaviors via FGF Signaling

Abnormal neuronal morphological features, such as dendrite branching, axonal branching, and spine density, are thought to contribute to the symptoms of depression and anxiety. However, the role and molecular mechanisms of aberrant neuronal morphology in the regulation of mood disorders remain poorly characterized. Here, we show that neuritin, an activity-dependent protein, regulates the axonal morphology of serotonin neurons. Male neuritin knock-out (KO) mice harbored impaired axonal branches of serotonin neurons in the medial prefrontal cortex and basolateral region of the amygdala (BLA), and male neuritin KO mice exhibited depressive and anxiety-like behaviors. We also observed that the expression of neuritin was decreased by unpredictable chronic stress in the male mouse brain and that decreased expression of neuritin was associated with reduced axonal branching of serotonin neurons in the brain and with depressive and anxiety behaviors in mice. Furthermore, the stress-mediated impairments in axonal branching and depressive behaviors were reversed by the overexpression of neuritin in the BLA. The ability of neuritin to increase axonal branching in serotonin neurons involves fibroblast growth factor (FGF) signaling, and neuritin contributes to FGF-2-mediated axonal branching regulation in vitro. Finally, the oral administration of an FGF inhibitor reduced the axonal branching of serotonin neurons in the brain and caused depressive and anxiety behaviors in male mice. Our results support the involvement of neuritin in models of stress-induced depression and suggest that neuronal morphological plasticity may play a role in controlling animal behavior.




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PDE4B Missense Variant Increases Susceptibility to Post-traumatic Stress Disorder-Relevant Phenotypes in Mice

Large-scale genome-wide association studies (GWASs) have associated intronic variants in PDE4B, encoding cAMP-specific phosphodiesterase-4B (PDE4B), with increased risk for post-traumatic stress disorder (PTSD), as well as schizophrenia and substance use disorders that are often comorbid with it. However, the pathophysiological mechanisms of genetic risk involving PDE4B are poorly understood. To examine the effects of PDE4B variation on phenotypes with translational relevance to psychiatric disorders, we focused on PDE4B missense variant M220T, which is present in the human genome as rare coding variant rs775201287. When expressed in HEK-293 cells, PDE4B1-M220T exhibited an attenuated response to a forskolin-elicited increase in the intracellular cAMP concentration. In behavioral tests, homozygous Pde4bM220T male mice with a C57BL/6JJcl background exhibited increased reactivity to novel environments, startle hyperreactivity, prepulse inhibition deficits, altered cued fear conditioning, and enhanced spatial memory, accompanied by an increase in cAMP signaling pathway-regulated expression of BDNF in the hippocampus. In response to a traumatic event (10 tone–shock pairings), neuronal activity was decreased in the cortex but enhanced in the amygdala and hippocampus of Pde4bM220T mice. At 24 h post-trauma, Pde4bM220T mice exhibited increased startle hyperreactivity and decreased plasma corticosterone levels, similar to phenotypes exhibited by PTSD patients. Trauma-exposed Pde4bM220T mice also exhibited a slower decay in freezing at 15 and 30 d post-trauma, demonstrating enhanced persistence of traumatic memories, similar to that exhibited by PTSD patients. These findings provide substantive mouse model evidence linking PDE4B variation to PTSD-relevant phenotypes and thus highlight how genetic variation of PDE4B may contribute to PTSD risk.




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Neurons Underlying Aggression-Like Actions That Are Shared by Both Males and Females in Drosophila

Aggression involves both sexually monomorphic and dimorphic actions. How the brain implements these two types of actions is poorly understood. We found that in Drosophila melanogaster, a set of neurons, which we call CL062, previously shown to mediate male aggression also mediate female aggression. These neurons elicit aggression acutely and without the presence of a target. Although the same set of actions is elicited in males and females, the overall behavior is sexually dimorphic. The CL062 neurons do not express fruitless, a gene required for sexual dimorphism in flies, and expressed by most other neurons important for controlling fly aggression. Connectomic analysis in a female electron microscopy dataset suggests that these neurons have limited connections with fruitless expressing neurons that have been shown to be important for aggression and signal to different descending neurons. Thus, CL062 is part of a monomorphic circuit for aggression that functions parallel to the known dimorphic circuits.




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Erratum: McCosh et al., "Norepinephrine Neurons in the Nucleus of the Solitary Tract Suppress Luteinizing Hormone Secretion in Female Mice"




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Spatiotemporal Neural Network for Sublexical Information Processing: An Intracranial SEEG Study

Words offer a unique opportunity to separate the processing mechanisms of object subcomponents from those of the whole object, because the phonological or semantic information provided by the word subcomponents (i.e., sublexical information) can conflict with that provided by the whole word (i.e., lexical information). Previous studies have revealed some of the specific brain regions and temporal information involved in sublexical information processing. However, a comprehensive spatiotemporal neural network for sublexical processing remains to be fully elucidated due to the low temporal or spatial resolutions of previous neuroimaging studies. In this study, we recorded stereoelectroencephalography signals with high spatial and temporal resolutions from a large sample of 39 epilepsy patients (both sexes) during a Chinese character oral reading task. We explored the activated brain regions and their connectivity related to three sublexical effects: phonological regularity (whether the whole character's pronunciation aligns with its phonetic radical), phonological consistency (whether characters with the same phonetic radical share the same pronunciation), and semantic transparency (whether the whole character's meaning aligns with its semantic radical). The results revealed that sublexical effects existed in the inferior frontal gyrus, precentral and postcentral gyri, temporal lobe, and middle occipital gyrus. Additionally, connectivity from the middle occipital gyrus to the postcentral gyrus and from postcentral gyrus to the fusiform gyrus was associated with the sublexical effects. These findings provide valuable insights into the spatiotemporal dynamics of sublexical processing and object recognition in the brain.




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G-Protein Signaling in Alzheimer's Disease: Spatial Expression Validation of Semi-supervised Deep Learning-Based Computational Framework

Systemic study of pathogenic pathways and interrelationships underlying genes associated with Alzheimer's disease (AD) facilitates the identification of new targets for effective treatments. Recently available large-scale multiomics datasets provide opportunities to use computational approaches for such studies. Here, we devised a novel disease gene identification (digID) computational framework that consists of a semi-supervised deep learning classifier to predict AD-associated genes and a protein–protein interaction (PPI) network-based analysis to prioritize the importance of these predicted genes in AD. digID predicted 1,529 AD-associated genes and revealed potentially new AD molecular mechanisms and therapeutic targets including GNAI1 and GNB1, two G-protein subunits that regulate cell signaling, and KNG1, an upstream modulator of CDC42 small G-protein signaling and mediator of inflammation and candidate coregulator of amyloid precursor protein (APP). Analysis of mRNA expression validated their dysregulation in AD brains but further revealed the significant spatial patterns in different brain regions as well as among different subregions of the frontal cortex and hippocampi. Super-resolution STochastic Optical Reconstruction Microscopy (STORM) further demonstrated their subcellular colocalization and molecular interactions with APP in a transgenic mouse model of both sexes with AD-like mutations. These studies support the predictions made by digID while highlighting the importance of concurrent biological validation of computationally identified gene clusters as potential new AD therapeutic targets.




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Neural Representations of Concreteness and Concrete Concepts Are Specific to the Individual

Different people listening to the same story may converge upon a largely shared interpretation while still developing idiosyncratic experiences atop that shared foundation. What linguistic properties support this individualized experience of natural language? Here, we investigate how the "concrete–abstract" axis—the extent to which a word is grounded in sensory experience—relates to within- and across-subject variability in the neural representations of language. Leveraging a dataset of human participants of both sexes who each listened to four auditory stories while undergoing functional magnetic resonance imaging, we demonstrate that neural representations of "concreteness" are both reliable across stories and relatively unique to individuals, while neural representations of "abstractness" are variable both within individuals and across the population. Using natural language processing tools, we show that concrete words exhibit similar neural representations despite spanning larger distances within a high-dimensional semantic space, which potentially reflects an underlying representational signature of sensory experience—namely, imageability—shared by concrete words but absent from abstract words. Our findings situate the concrete–abstract axis as a core dimension that supports both shared and individualized representations of natural language.




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Pre- and Postsynaptic MEF2C Promotes Experience-Dependent, Input-Specific Development of Cortical Layer 4 to Layer 2/3 Excitatory Synapses and Regulates Activity-Dependent Expression of Synaptic Cell Adhesion Molecules

Experience- and activity-dependent transcription is a candidate mechanism to mediate development and refinement of specific cortical circuits. Here, we demonstrate that the activity-dependent transcription factor myocyte enhancer factor 2C (MEF2C) is required in both presynaptic layer (L) 4 and postsynaptic L2/3 mouse (male and female) somatosensory (S1) cortical neurons for development of this specific synaptic connection. While postsynaptic deletion of Mef2c weakens L4 synaptic inputs, it has no effect on inputs from local L2/3, contralateral S1, or the ipsilateral frontal/motor cortex. Similarly, homozygous or heterozygous deletion of Mef2c in presynaptic L4 neurons weakens L4 to L2/3 excitatory synaptic inputs by decreasing presynaptic release probability. Postsynaptic MEF2C is specifically required during an early postnatal, experience-dependent, period for L4 to L2/3 synapse function, and expression of transcriptionally active MEF2C (MEF2C-VP16) rescues weak L4 to L2/3 synaptic strength in sensory-deprived mice. Together, these results suggest that experience- and/or activity-dependent transcriptional activation of MEF2C promotes development of L4 to L2/3 synapses. Additionally, MEF2C regulates the expression of many pre- and postsynaptic genes in postnatal cortical neurons. Interestingly, MEF2C was necessary for activity-dependent expression of many presynaptic genes, including those that function in transsynaptic adhesion and neurotransmitter release. This work provides mechanistic insight into the experience-dependent development of specific cortical circuits.




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What the Long History of Mail-In Voting in the U.S. Reveals About the Election Process

A recent exhibition shows how soldiers sent in votes during the Civil War and World War II, as many Americans would in 2020 following the spread of the Covid-19 pandemic




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Graziano da Silva is confident in a “significant progress” against hunger in the next four years

FAO Director-General José Graziano da Silva today expressed confidence that “significant progress against hunger, food insecurity and malnutrition,” will be achieved in the next four years. He made the [...]




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More than 100 Professional vacancies at FAO being issued

Over 100 professional vacancies are in the process of being released and opened for applications. They cover mainly technical areas of work in headquarters and regional offices.

In addition, global calls [...]




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Assessment shows technical capacity on the rise since 2012

Further to Council-endorsed adjustments to the 2016-17 Programme of Work and Budget (PWB) made in 2015, an assessment of the technical capacity of the Organization by a team of independent [...]




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This World Food Day, Pope Francis addresses FAO and the international community

World Food Day is coming up this Monday, October 16. This year’s theme, Change the future of migration. Invest in food security and rural development, highlights FAO’s work in [...]




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Major outcomes and follow-ups of the Seventh Session of the Governing Body of the ITPGRFA

The Governing Body took a number of decisions that require action by Contracting Parties. This communication draws the attention of Contracting Parties to those decisions that are addressed to [...]




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The 159th session of the FAO Council came to a close last Friday, following intense week-long deliberations, concluding in consensus

Addressing the plenary meeting in the closing session of the 159th Session of the Council, the Director-General expressed his appreciation to delegates for their commitment and hard work to [...]




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Recommended reads ahead of the 42nd session of the FAO Conference

The FAO Conference meets every two years to determine the policies of the Organization, approve the budget, and make recommendations to its Members. 

If you would like to dig deeper into [...]




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Accessing FAO's knowledge resources – next session 15 September

Ahead of the Food Systems Summit, join the Publications team to find out more about where to find FAO publications, the different formats available, how you can re-use the [...]




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Accessing FAO's knowledge resources

Ahead of the Food Systems Summit, join the Publications team to find out more about where to find FAO publications, the different formats available, how you can re-use the [...]




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Accessing FAO's knowledge resources – Last session 22 September

Ahead of the Food Systems Summit, join the Publications team to find out more about where to find FAO publications, the different formats available, how you can re-use the [...]




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FAO Director-General addresses G7 Agriculture Ministers on Global Food Markets and Prices

Click here to access the presentation by QU Dongyu.

 




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First Session of COAG's Sub-Committee on Livestock 16-18 March 2022

It all started in 2016 and after many productive deliberations, in October 2020 at the 27th session of the Committee on Agriculture (COAG) the



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170th Session of the Council

Opening Statement by FAO Director-General QU Dongyu.




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FAO in review: Building and deploying professional and practical expertise

Read the seriesFull Article



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FAO in Review: How the Organization changed its Business Model through innovation

Read the seriesFull Article



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171st Session of the FAO Council Statement By Dr QU Dongyu, FAO Director-General

A statement by FAO Director-General QU Dongyu




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Access to more data on private sector partnerships

The  Food and Agriculture Organization of the United Nations (FAO) is happy to announce significant updates and upgrades to the FAO CONNECT CRM Database section [...]




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In his International Youth Day 2023 message, QU Dongyu announces the establishment of FAO's new Office for Youth and Women

The FAO Director-General today issued the following message on the occasion of International Youth Day 2023:

Full Article



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The Second Session of the COAG Sub-Committee on Livestock

The Second Session of the COAG Sub-Committee on Livestock: Call for Proposals for side events at FAO headquarters in Rome, July 16-18, 2024! FAO Members and partner [...]




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Second Session of COAG's Sub-Committee on Livestock 16-18 July 2024

The Committee on Agriculture (COAG), established in 1971, is one of FAO’s Governing Bodies providing overall policy and regulatory guidance on issues relating to agriculture (including livestock), food safety, [...]




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Advancing sustainable inland fisheries and aquaculture in Europe: EIFAAC hosts 32nd Session and International Symposium

The European Inland Fisheries and Aquaculture Advisory Commission (EIFAAC) is dedicated to the sustainable development and responsible management of European inland fisheries and aquaculture. In line with the [...]




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New York Honors Shirley Chisholm, First Black Congresswoman in U.S. History, With New Statue

The firebrand politician once quipped that she would like to be remembered as a woman who ‘had guts’




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Ask Smithsonian: Does Stress Turn Your Hair Gray?

Take a calming breath, then watch this video to find out




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The Architect of Notre Dame's Astounding Football Success

Under exuberant coach, Knute Rockne, Notre Dame set the standards for football excellence. But off the field, the Fighting Irish was a PR sensation, capturing the hearts of a riveted nation.




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The Smithsonian Channel Commemorates the 50th Anniversary of the Wilderness Act

Aerial America: Wilderness premieres Sunday, Sept. 7 at 9PM ET/PT




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Assessing Coral Populations

Marine biologist Nancy Knowlton discusses a research trip to the Smithsonian Tropical Research Institute, in Panama, where she and her collaborators collected data on coral reef populations. Reef sustainability is closely tied to coral reproduction. Then director of the Center for Marine Biodiversity and Conservation at the Scripps Institution of Oceanography, Knowlton, who has since been hired to lead the Smithsonian's Ocean Initiative, has reservations about the long-term future of corals